Centre for Resources, Environment and Food Security, Department of Plant Nutrition, Key Laboratory of Plant-Soil Interactions, Ministry of Education, China Agricultural University, Beijing 100193, China.
Sci China Life Sci. 2013 Apr;56(4):313-23. doi: 10.1007/s11427-013-4461-9. Epub 2013 Mar 16.
White lupin (Lupinus albus) exhibits strong root morphological and physiological responses to phosphorus (P) deficiency and auxin treatments, but the interactive effects of P and auxin in regulating root morphological and physiological traits are not fully understood. This study aimed to assess white lupin root traits as influenced by P (0 or 250 μmol L(-1)) and auxin (10(-8) mol L(-1) NAA) in nutrient solution. Both P deficiency and auxin treatments significantly altered root morphological traits, as evidenced by reduced taproot length, increased number and density of first-order lateral roots, and enhanced cluster-root formation. Changes in root physiological traits were also observed, i.e., increased proton, citrate, and acid phosphatase exudation. Exogenous auxin enhanced root responses and sensitivity to P deficiency. A significant interplay exists between P and auxin in the regulation of root morphological and physiological traits. Principal component analysis showed that P availability explained 64.8% and auxin addition 21.3% of the total variation in root trait parameters, indicating that P availability is much more important than auxin in modifying root responses of white lupin. This suggests that white lupin can coordinate root morphological and physiological responses to enhance acquisition of P resources, with an optimal trade-off between root morphological and physiological traits regulated by external stimuli such as P availability and auxin.
白 Lupinus albus 对磷(P)缺乏和生长素处理表现出强烈的根形态和生理反应,但 P 和生长素在调节根形态和生理特性方面的相互作用尚不完全清楚。本研究旨在评估 P(0 或 250 μmol L(-1))和生长素(10(-8)mol L(-1)NAA)在营养液中对白 Lupinus albus 根特性的影响。P 缺乏和生长素处理均显著改变了根形态特性,表现在主根长度缩短,一级侧根数量和密度增加,簇状根形成增强。根生理特性也发生了变化,即质子、柠檬酸和酸性磷酸酶的分泌增加。外源生长素增强了根对 P 缺乏的响应和敏感性。P 和生长素在调节根形态和生理特性方面存在显著的相互作用。主成分分析表明,P 供应解释了根性状参数总变异的 64.8%,生长素添加解释了 21.3%,表明 P 供应比生长素在修饰白 Lupinus albus 根响应方面更为重要。这表明白 Lupinus albus 可以协调根形态和生理响应,以增强对 P 资源的获取,通过外部刺激(如 P 供应和生长素)调节根形态和生理特性的最佳权衡。